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The physiological role of cardiac cytoskeleton and its alterations in heart failure

机译:心脏细胞骨架的生理作用及其在心力衰竭中的改变

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Cardiac muscle cells are equipped with specialized biochemical machineries for the rapid generation of force and movement central to the work generated by the heart. During each heart beat cardiac muscle cells perceive and experience changes in length and load, which reflect one of the fundamental principles of physiology known as the Frank-Starling law of the heart. Cardiac muscle cells are unique mechanical stretch sensors that allow the heart to increase cardiac output, and adjust it to new physiological and pathological situations. In the present review we discuss the mechano-sensory role of the cytoskeletal proteins with respect to their tight interaction with the sarcolemma and extracellular matrix. The role of contractile thick and thin filament proteins, the elastic protein titin, and their anchorage at the Z-disc and M-band, with associated proteins are reviewed in physiologic and pathologic conditions leading to heart failure. This article is part of a Special Issue entitled: Reciprocal influences between cell cytoskeleton and membrane channels, receptors and transporters. Guest Editor: Jean Claude Hervé
机译:心肌细胞配备有专门的生化机械,可快速产生力量和运动,这是心脏产生的工作的核心。在每次心跳期间,心肌细胞会感知并经历长度和负荷的变化,这反映了生理学的基本原理之一,即心脏的弗兰克·史达琳定律。心肌细胞是独特的机械拉伸传感器,可使心脏增加心输出量,并使其适应新的生理和病理情况。在本综述中,我们讨论了细胞骨架蛋白与肌膜和细胞外基质的紧密相互作用的机械感觉作用。在导致心力衰竭的生理和病理状况中,对可收缩的粗细纤维蛋白,弹性蛋白的作用以及它们在Z盘和M波段的锚定以及相关蛋白的作用进行了综述。本文是一个名为“:细胞骨架与膜通道,受体和转运蛋白之间的相互影响”的特刊的一部分。客座编辑:让·克劳德·埃尔维

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